Face recognition is a bio-metric technology that has been widely adopted for security, authentication, and identification. In recent years, face recognition systems have also been used for attendance management in edu...
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Face recognition is a bio-metric technology that has been widely adopted for security, authentication, and identification. In recent years, face recognition systems have also been used for attendance management in edu...
Face recognition is a bio-metric technology that has been widely adopted for security, authentication, and identification. In recent years, face recognition systems have also been used for attendance management in educational institutions and offices. This paper presents a face recognition-based attendance management system that is designed to replace the time-consuming and error-prone manual attendance process. The system comprises four key phases: database creation, face detection, face recognition, and attendance updating. The initial phase involves the creation of a comprehensive database of images of the students in the class. Subsequently, the system employs the HAAR-Cascade classifier for face detection and the Local Binary Pattern Histogram algorithm for face recognition. The system accurately detects and recognizes faces in real time by analyzing the live video stream from the classroom. Finally, at the conclusion of each session, the attendance records are compiled and stored in a CSV file. The presented system has been validated on a dataset of 100 students. The results show that the system can achieve an accuracy of over 90%. The system is also able to handle variations in lighting and facial expressions. The implementation of this face recognition-based attendance management system can enhance operational efficiency, reduce administrative burdens, and ensure more accurate attendance tracking.
The viscosity of a substance or material is intensely influenced by the temperature,especially in the field of lubricant engineering where the changeable temperature is well *** this paper,the problem of temperature-d...
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The viscosity of a substance or material is intensely influenced by the temperature,especially in the field of lubricant engineering where the changeable temperature is well *** this paper,the problem of temperature-dependent viscosity on mixed convection flow of Eyring Powell fluid was studied together with Newtonian heating thermal boundary *** flow was assumed to move over a vertical stretching *** model of the problem,which is in partial differential equations,was first transformed to ordinary differential equations using appropriate *** approach was considered to reduce the complexity of the ***,the transformed equations were solved using the Keller box method under the finite difference scheme *** validation process of the results was performed,and it was found to be in an excellent *** results on the present computation are shown in tabular form and also graphical *** major finding was observed where the skin friction and Nusselt number were boosted in the strong viscosity.
Non-Newtonian is a type of fluid that does not comply with the viscosity under the Law of Newton and is being widely used in industrial *** include those related to chemical industries,cosmetics manufacturing,pharmace...
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Non-Newtonian is a type of fluid that does not comply with the viscosity under the Law of Newton and is being widely used in industrial *** include those related to chemical industries,cosmetics manufacturing,pharmaceutical field,food processing,as well as oil and gas *** inability of the conventional equations of Navier–Stokes to accurately depict rheological behavior for certain fluids led to an emergence study for non-Newtonian fluids’*** line with this,a mathematical model of forced convective flow on non-Newtonian Eyring Powell fluid under temperature-dependent viscosity(TDV)circumstance is *** fluid model is embedded with the Newtonian heating(NH)boundary condition as a heating circumstance and is assumed to move over a stretching sheet acting *** appropriate similarity variables,the respective model was converted into ordinary differential equations(ODE),which was later solved utilizing the Keller box *** present model is validated by comparing the existing output in literature at certain special limiting cases,where the validation results display a firm *** current outputs for the proposed model are shown in tabular and graphical form for variation of skin friction plus Nusselt number,velocity and temperature distribution,respectively.
The development of the binary algorithm for MyRA big data analysis and management is discussed in this paper. The algorithm is used in database group at the Universiti of Kuala Lumpur (unikl) and that is a central dat...
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ISBN:
(数字)9781728139524
ISBN:
(纸本)9781728139531
The development of the binary algorithm for MyRA big data analysis and management is discussed in this paper. The algorithm is used in database group at the Universiti of Kuala Lumpur (unikl) and that is a central data base server service aimed at domain scientists around the all 14 unikl campuses. The MyRA database project has two main objectives. The first is to create an engine that is mature enough, fast and easy to use that domain researchers can use. The second goal is to create a platform to test new database research concepts inspired by our users' needs. To create the system, we have created a binary algorithm that has the freedom to determine all components of the system design as expected. So, we highlight the binary algorithm for selecting and innovating MyRA Big Data key design and reporting on our experience with the use of binary algorithms in the use of various data sciences.
This paper presents the real-time environment development in a virtual environment (VE) by developing a new algorithm. The development process has been done by examining the novel algorithm. The algorithm has metaphor...
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ISBN:
(数字)9781728139524
ISBN:
(纸本)9781728139531
This paper presents the real-time environment development in a virtual environment (VE) by developing a new algorithm. The development process has been done by examining the novel algorithm. The algorithm has metaphors as the basis for facilitating social interaction, which explores space by adjusting the trajectories of individual vectors, referring to those that are considered points of departure in extra-dimensional virtual space. This algorithm will adjust the turn-around time, burst time and waiting time when compared with the current algorithm..
A copper nanoparticle exhibit electromagnetic spectrum that is potential in a biosensor development. It is crucial to design a low cost nanoparticle biosensor that is easily fabricated at precise sizes and density. Th...
A copper nanoparticle exhibit electromagnetic spectrum that is potential in a biosensor development. It is crucial to design a low cost nanoparticle biosensor that is easily fabricated at precise sizes and density. This paper provides a convenient method for copper nanoparticle deposition on a glass substrate with a magnetron sputtering process known as Physical Vapor Deposition. The main objective is to determine a reliable prediction recipe for various nanometer copper film thicknesses. In this experiment, six glass slides were coated with copper at different sputtering time. The time was varied from 280 sec to 980 sec while Argon gas and DC power were maintained respectively at 80 sccm and 130 watt. Later, the optics based measurement and electron microscope were employed for assessing the copper film thickness. The experiment result indicates different thicknesses were achieved from 35 nm to 45 nm at various sputtering time. A uniform and continuous coating were achieved as magnified by Scanning Electron Microscope. The result is beneficial for evaluating the anisotropy of the copper coating for a nanoscale microbial detection at different spectral wavelength.
Reliability is an essential role in electricity business as the demand is rising rapidly. Recently, Microgrid technologies have been implemented in the traditional centralized grid in order to mitigate the power distu...
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Reliability is an essential role in electricity business as the demand is rising rapidly. Recently, Microgrid technologies have been implemented in the traditional centralized grid in order to mitigate the power disturbance. Many researchers have proposed different configurations of the Microgrid with a constitution of renewable energy sources such as Photovoltaic Plant, Wind Plant and back up supply such as Battery Storage and Uninterruptible Power Supply that offer the reliability improvements. This paper proposes a method of modelling the Photovoltaic plant and Uninterruptible Power Supply system for a small commercial load in OrCAD PSpice simulation tool by implementing the interconnected configuration to perform the reliability estimation test.
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